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人单核细胞牢固黏附及早期迁移过程中内皮细胞的机械力

Mechanical Forces in Endothelial Cells during Firm Adhesion and Early Transmigration of Human Monocytes.

作者信息

Liu Zhijun, Sniadecki Nathan J, Chen Christopher S

机构信息

Department of Bioengineering, University of Pennsylvania, Philadelphia, PA 19104, USA.

出版信息

Cell Mol Bioeng. 2010 Mar 1;3(1):50-59. doi: 10.1007/s12195-010-0105-3.

Abstract

Transmigration of leukocytes across the endothelial barrier is a tightly controlled process involving multiple steps, including rolling adhesion, firm adhesion, and then penetration of leukocytes through the endothelial monolayer. While the key molecular signals have been described in great detail, we are only just beginning to unveil the mechanical forces involved in this process. Here, using a microfabricated system that reports traction forces generated by cells, we describe forces generated by endothelial cells during monocyte firm adhesion and transmigration. Average traction force across the endothelial monolayer increased dramatically when monocytes firmly adhered and transmigrated. Interestingly, the endothelial cell that was in direct contact with the monocyte exhibited much larger traction forces relative to its neighbors, and the direction of these traction forces aligned centripetally with respect to the monocyte. The increase in traction force occurred in the local subcellular zone of monocyte adhesion, and dissipated rapidly with distance. To begin to characterize the basis for this mechanical effect, we show that beads coated with anti-ICAM-1 or VCAM-1 antibodies bound to monolayers could reproduce this effect. Taken together, this study provides a new approach to examining the role of cellular mechanics in regulating leukocyte transmigration through the endothelium.

摘要

白细胞穿越内皮屏障是一个受到严格调控的过程,涉及多个步骤,包括滚动黏附、牢固黏附,然后白细胞穿透内皮单层。虽然关键的分子信号已被详细描述,但我们才刚刚开始揭示这个过程中涉及的机械力。在这里,我们使用一个能报告细胞产生的牵引力的微制造系统,描述了单核细胞牢固黏附和迁移过程中内皮细胞产生的力。当单核细胞牢固黏附和迁移时,内皮单层上的平均牵引力显著增加。有趣的是,与单核细胞直接接触的内皮细胞相对于其相邻细胞表现出大得多的牵引力,并且这些牵引力的方向相对于单核细胞呈向心排列。牵引力的增加发生在单核细胞黏附的局部亚细胞区域,并随距离迅速消散。为了开始阐明这种机械效应的基础,我们表明,包被有抗ICAM-1或VCAM-1抗体的珠子与单层结合可以重现这种效应。综上所述,本研究提供了一种新方法来研究细胞力学在调节白细胞穿越内皮迁移中的作用。

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